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Updated: Dec 15, 2025

Strategies for Assessing Autistic-Like Behaviors in Mice
Published on: September 20, 2024
Selective deletion of Caspase-3 gene in the dopaminergic system exhibits autistic-like behaviour
Irene García-Domínguez1, Irene Suárez-Pereira2, Marti Santiago1
1Departamento de Bioquímica y Biología Molecular, Facultad de Farmacia, Universidad de Sevilla, Sevilla, Spain; Instituto de Biomedicina de Sevilla-Hospital Universitario Virgen del Rocío/CSIC/Universidad de Sevilla, Sevilla, Spain.
Abstract:
Apoptotic caspases are thought to play critical roles in elimination of excessive and non-functional synapses and removal of extra cells during early developmental stages. Hence, an impairment of this process may thus constitute a basis for numerous neurological and psychiatric diseases. This view is especially relevant for dopamine due to its pleiotropic roles in motor control, motivation and reward processing. Here, we have analysed the effect of caspase-3 depletion on the development of catecholaminergic neurons and performed a wide array of neurochemical, ultrastructural and behavioural assays. To achieve this, we performed selective deletion of the Casp3 gene in tyrosine hydroxylase (TH)-expressing cells using Cre-loxP-mediated recombination. Histological evaluation of most relevant catecholaminergic nuclei revealed the ventral mesencephalon as the most affected region. Stereological analysis demonstrated an increase in the number of TH-positive neurons in both the substantia nigra and ventral tegmental area along with enlarged volume of the ventral midbrain. Analysis of main innervating tissues revealed a rather contrasting profile. In striatum, basal extracellular levels and potassium-evoked DA release were significantly reduced in mice lacking Casp3, a clear indication of dopaminergic hypofunction in dopaminergic innervating tissues. This view was sustained by analysis of TH-labelled dopaminergic terminals by confocal and electron microscopy. Remarkably, at a behavioural level, Casp3-deficient mice exhibited impaired social interaction, restrictive interests and repetitive stereotypies, which are considered the core symptoms of autism spectrum disorder (ASD). Our study revitalizes the potential involvement of dopaminergic transmission in ASD and provides an excellent model to get further insights in ASD pathogenesis.
Insights
Depleting caspase-3 in dopamine neurons increases neuron numbers but impairs dopamine release, leading to autism-like behaviors in mice. This highlights caspase-3
Area of Science:
- Neuroscience
- Developmental Biology
- Genetics
Background:
- Apoptotic caspases are crucial for eliminating excess cells and synapses during development.
- Impaired caspase function may underlie neurological and psychiatric disorders, particularly those involving dopamine.
- Dopamine plays key roles in motor control, motivation, and reward processing.
Purpose of the Study:
- To investigate the impact of caspase-3 depletion on catecholaminergic neuron development.
- To analyze neurochemical, ultrastructural, and behavioral changes associated with caspase-3 deficiency.
- To explore the role of dopaminergic dysfunction in autism spectrum disorder (ASD) pathogenesis.
Main Methods:
- Selective deletion of the Caspase-3 (Casp3) gene in tyrosine hydroxylase (TH)-expressing cells using Cre-loxP system.
- Histological and stereological analysis of catecholaminergic nuclei (substantia nigra, ventral tegmental area).
- Neurochemical assays of dopamine release, confocal and electron microscopy of dopaminergic terminals, and behavioral tests for social interaction and repetitive behaviors.
Main Results:
- Caspase-3 depletion led to increased TH-positive neuron numbers and ventral midbrain volume.
- Significant reduction in basal extracellular dopamine levels and potassium-evoked dopamine release in the striatum, indicating dopaminergic hypofunction.
- Caspase-3 deficient mice displayed impaired social interaction, restrictive interests, and stereotypies, core symptoms of ASD.
Conclusions:
- Caspase-3 plays a critical role in the proper development and function of the dopaminergic system.
- Dopaminergic hypofunction resulting from caspase-3 deficiency is linked to ASD-like behaviors.
- This study provides a valuable mouse model for investigating the pathogenesis of ASD and the role of dopaminergic transmission.
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